Please use this identifier to cite or link to this item: https://scidar.kg.ac.rs/handle/123456789/23294
Title: Minimum positioning-time for mechatronic systems
Authors: Filipovic, Vojislav
Djordjevic, Vladimir
Issue Date: 2026
Abstract: The paper considers a method for transferring the state of a dynamic system to a specified state for minimum positioning time (positioning servo systems, manipulators, walking robots). The system under consideration is described by a sampled-data model based on a first-order hold element. It is a first-designed feed-forward controller using a special case of an optimal linear system based on a quadratic performance index. When the final state is fixed (final-state control), the result is open-loop control. Owing to the fact that all mechanical systems have resonant modes at high frequencies, the output of a given feed-forward controller must be converted to a smooth reference signal. For that, we use a lowpass filter implemented as an integrator. In the real system, various disturbance sources (disturbances, parameter uncertainty) exist. For such systems, a two-degree-of-freedom control strategy is proposed. In that case, in the paper, a feedback controller is designed using the superstability concept, and the solution is based on linear programming. The main contributions of the paper are: (i) design of a feedforward controller for sampled-data systems with a first-order hold element, based on optimal control theory; (ii) design of a low-pass filter for the above system; (iii) design of two-degree-of-freedom control systems where the feedback controller is based on the super-stability theory of systems.
URI: https://scidar.kg.ac.rs/handle/123456789/23294
Type: conferenceObject
DOI: 10.46793/ET26.D06F
Appears in Collections:Faculty of Mechanical and Civil Engineering, Kraljevo

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